English

Dynamical coupled-channels approach to electroweak meson productions on nucleon and deuteron

Nuclear Theory 2020-08-26 v1 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment

Abstract

I overview our recent activity with the Argonne-Osaka dynamical coupled-channels (DCC) approach that provides a unified description of various electroweak meson productions on single nucleon and nucleus. First I discuss the DCC model of a single nucleon. The DCC model has been developed through a comprehensive analysis of πN,γNπN,ηN,KΛ,KΣ\pi N, \gamma N\to \pi N, \eta N, K\Lambda, K\Sigma reaction data. The model has been further extended to finite Q2Q^2 region by analyzing pion electroproduction data, and to neutrino-induced reactions using the PCAC relation. Next I discuss applications of the DCC model to electroweak meson productions on the deuteron. We consider impulse mechanism supplemented by final state interactions (FSI) due to NNNN and meson-nucleon rescatterings. Using this model, I discuss FSI corrections needed to extract γ\gamma-neutron reaction observables from γdπNN\gamma d\to \pi NN, and a novel method to extract ηN\eta N scattering length from γdηpn\gamma d\to \eta pn. I also discuss FSI corrections on the existing neutrino-nucleon pion production data that had been extracted from neutrino-deuteron data.

Keywords

Cite

@article{arxiv.1906.10351,
  title  = {Dynamical coupled-channels approach to electroweak meson productions on nucleon and deuteron},
  author = {Satoshi X. Nakamura},
  journal= {arXiv preprint arXiv:1906.10351},
  year   = {2020}
}

Comments

9 pages, 10 figures; Plenary talk at 15th International Conference on Meson-Nucleon Physics and the Structure of the Nucleon (MENU-2019), June 2-7 2019, Pittsburgh, USA